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Results for “Prairie dog”

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The process of cholesterol cholelithiasis induced by diet in the prairie dog: a physicochemical characterization.

The rapid induction of cholesterol cholelithiasis in a new experimental model, the prairie dog, has recently been reported by two groups. In this model they were able to induce gallstones in as brief a period as 2 weeks, using a 1.2 per cent cholesterol diet. This unprecedented time intensity or telescoping of the induction process provided a unique opportunity for observation of physicochemical changes occurring rapidly over a short period of time and to correlate these with degree of biliary cholesterol saturation. To make such observations, 97 adult male and female prairie dogs were used in the present study. Seventy-two were fed the high cholesterol diet and sacrificed at intervals over a 14-day period; the remaining 25 were used as controls. The primary objective of this work was to determine whether or not there was any relationship between the in vivo events induced in prairie dog bile and our recently reported detailed observations of cholesterol precipitation phenomena in synthetic bile analogs. In these studies, solutions of physiologically relevant composition were constructed, which, when plotted according to convention on a tri-linear graph, fell within the zone of metastable or suspended supersaturation. These solutions revealed a consistent and previously undescribed liquid crystal to solid crystal phase transition during their approach to equilibrium at 37 degrees C. The in vivo studies of prairie dog bile following rapid induction of supersaturation revealed identical changes. At first, the supersaturated biles were isotropic followed by a period of turbidity and invariable formation of mesophase. After a few days, the liquid crystals decreased and solid cholesterol crystallites appeared. The most striking aspect of these observations is that the in vitro work has now predicted not only static, but dynamic processes as well, with respect to cholesterol precipitation beginning with the metastably supersaturated state and eventuating in gallstone formation. Ancillary new findings, resulting from the high cholesterol diet, included the induction of human-like hyper-beta-lipoproteinemia and rapid hepatocyte degranulation shown by electron microscopy.

Animals

Bioluminescence Imaging to Study Recombinant Orthopoxvirus Infection in Animal Models.

Bioluminescent images of viral replication in live animals (in vivo) reveal disease dynamics and effects of medical countermeasures over time. After selecting an appropriate orthopoxvirus animal model for the study, a recombinant virus with the firefly luciferase gene inserted in the genome is used to infect the animals. On the day of bioluminescent imaging, the substrate, D-luciferin, is prepared; animals are sedated and injected with the substrate and IVIS imager is utilized; various bioluminescent images are acquired; then animals recover and are able to continue in the study. Ex vivo imaging can also be completed after animals are euthanized at experimental endpoint. This approach allows real-time imaging of viral kinetics within an animal, and analysis of images can provide an additional quantitative measure throughout the study. Bioluminescent imaging not only provides scientific benefits but also benefits to animal welfare. For these reasons, bioluminescent imaging should be considered for any in vivo orthopoxvirus study.

Animals

Respiratory allergy in the dog: induction by the respiratory route and the effect of passive antibody.

A technique for inducing hypersensitivity to prairie sage pollen (Artemisia gnopheles) in the dog was developed. The allergen induced skin reactivity in most dogs and respiratory hypersensitivity in 7 of the 17 animals tested. The respiratory hypersensitivity resembled naturally occurring respiratory allergies in both man and dog. The route of allergy induction resembles the natural route and it is felt that this system provides a useful model system for the study of respiratory allergies. Animals in which hypersensitivity was induced were used to investigate the role of passive 'blocking' antibody in respiratory allergy. It was observed that passive antibody will greatly inhibit the respiratory response to inspired allergen while completely inhibiting the cutaneous response. The results of these studies are discussed in relation to other studies.

Administration, Intranasal